DocumentCode
54903
Title
Capacity Considerations for Secondary Networks in TV White Space
Author
Hessar, Farzad ; Roy, Sumit
Author_Institution
Dept. of Electr. Eng., Univ. of Washington, Seattle, WA, USA
Volume
14
Issue
9
fYear
2015
fDate
Sept. 1 2015
Firstpage
1780
Lastpage
1793
Abstract
The so-called “TV white spaces” (TVWS)-representing unused TV channels in any given location as the result of the transition to digital broadcasting-is designated for unlicensed use [1], [2], [3] by the US Federal Communications Commission (FCC). This presents significant new opportunities within the context of emerging 4G networks for developing new wireless access technologies that meet the goals of the US National Broadband Plan [4] (notably true broadband access for an increasing fraction of the population). There are multiple challenges in realizing this goal; the most fundamental being the fact that the available WS capacity is currently not accurately known, since it depends on a multiplicity of factors-including system parameters of existing incumbents (broadcasters), propagation characteristics of local terrain as well as FCC rules. In this paper, we explore the capacity of white space networks by developing a detailed model that includes all the major variables, and is cognizant of FCC regulations that provide constraints on incumbent protection. Real terrain information and propagation models for the primary broadcaster and adjacent channel interference from TV transmitters are included to estimate their impact on achievable WS capacity. The model is later used to explore various trade-offs between network capacity and system parameters and suggests possible amendments to FCC´s incumbent protection rules in the favor of furthering white space capacity.
Keywords
4G mobile communication; adjacent channel interference; telecommunication channels; 4G networks; FCC; TV white space; TVWS; US Federal Communications Commission; US National Broadband Plan; channel interference; digital broadcasting; secondary networks; unused TV channels; wireless access technologies; Availability; FCC; Interference; Receivers; TV; Transmitters; White spaces; Cellular Network; Cognitive Radio; Dynamic Spectrum Access; TV White Space; TV white space; Unlicensed Spectrum; Whitespaces; cellular network; cognitive radio; dynamic spectrum access; unlicensed spectrum;
fLanguage
English
Journal_Title
Mobile Computing, IEEE Transactions on
Publisher
ieee
ISSN
1536-1233
Type
jour
DOI
10.1109/TMC.2014.2374159
Filename
6965625
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